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Appendix F - Statistics and Probability Concepts with Applications

Published online by Cambridge University Press:  20 March 2025

P. A. Caridis
Affiliation:
National Technical University of Athens
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Global Strength of Ships
Analysis and Design using Mathematical Methods
, pp. 780 - 787
Publisher: Cambridge University Press
Print publication year: 2025

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References

Bickel, P. J. Doksum, K. A. (2001) Mathematical Statistics. Basic Ideas and Selected Topics. Vol. 1, 2nd ed. Upper Saddle River, NJ: Prentice Hall.Google Scholar
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Mansour, A. E. (1995) Extreme loads and load combinations. J. Ship Res. Vol. 39 5361.CrossRefGoogle Scholar
Mansour, A. Liu, D. (2008) Strength of Ships and Ocean Structures, Paulling, J. R. (Ed.) Principles of Naval Architecture Series, Jersey City, NJ: SNAME.Google Scholar
Ochi, M. E. (1999) Ocean Waves: The Stochastic Approach. Cambridge: Cambridge University Press.Google Scholar
Papoulis, A. (1990) Probabiliy & Statistics Englewood Cliffs, NJ: Prentice Hall International Inc.Google Scholar
Price, W. G. Bishop, R. E. D. (1974) Probabilistic Theory of Ship Dynamics. London: Chapman Hall.Google Scholar
Petricić, M. Mansour, A. E. (2011) Long-term correlation structure of wave loads using simulation. Mar. Struct. Vol. 24 97116.CrossRefGoogle Scholar
Petricić, M. Mansour, A. E. (2010) Estimation of the long-term correlation coefficients by simulation. Proc. ASME 2010 29th Int. Conf. Ocean Offshore & Arctic Eng. OMAE2010 6–11 June 2010 Shanghai. 1–11.Google Scholar
Wikipedia. (11 February 2021). Maximum likelihood estimation. Wikipedia. Retrieved 14 February 2021 from https://en.wikipedia.org/w/index.php?title=Maximum_likelihood_estimation&oldid=1006144516Google Scholar
(N.d.). Stanford.edu. Retrieved 15 February 2021 from www-stat.stanford.edu/~susan/courses/s116/node79.htmlGoogle Scholar

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